TY - JOUR
T1 - Design and evaluation of a unique RT-qPCR assay for diagnostic quality control assessment that is applicable to pathogen detection in three species of salmonid fish
AU - Sepúlveda, Dagoberto
AU - Bohle, Harry
AU - Labra, Álvaro
AU - Grothusen, Horst
AU - Marshall, Sergio H.
N1 - Funding Information:
The authors would like to thank Dannia Gimenez, Macarena Jimenez and Alicia Millon, for their skillful technical assistance with the nucleic acid isolation from tissue, RT-qPCR, and quality control in the experiment performed in the Pontificia Universidad Católica de Valparaíso. Funding for this research was provided by CORFO-Innova grant number 09MCSS-6725. We also thank Sernapesca for the kind support.
PY - 2013/9/16
Y1 - 2013/9/16
N2 - Background: The detection of pathogens at early stages of infection is a key point for disease control in aquaculture. Therefore, accurate diagnostic procedures are a must. Real-time PCR has been a mainstay in diagnostics over the years due to its speed, specificity, sensitivity, reproducibility and throughput; as such, real-time PCR is a target for improvement. Nevertheless, to validate a novel diagnostic tool, correct setup of the assay, including proper endogenous controls to evaluate the quantity and quality of the samples and to detect possible sample degradation, is compulsory. This work aims to design a unique RT-qPCR assay for pathogen detection in the three salmonid species reared in Chile. The assay uses elongation factor 1 alpha as the single endogenous control, thus avoiding the need for multiple endogenous controls, as well as multiple validations and non-comparable quality control parameters.Results: The in vivo and in vitro analyses of samples from Salmo salar, Oncorhynchus mykiss and Oncorhynchus kisutch showed that when primers were accurately selected to target conserved regions of the elongation factor 1 alpha (ELF1α) gene, a single novel RT-qPCR assay yielding similar and reproducible Ct values between the three species could be designed. The opposite occurred when an assay originally designed for Salmo salar was tested in samples from the two species of the genus Oncorhynchus.Conclusions: Here, we report the design and evaluation of an accurate trans-species RT-qPCR assay that uses the elongation factor 1 alpha (ELF1α) gene as an endogenous control and is applicable for diagnostic purposes in samples obtained from the three salmonid species reared in Chile.
AB - Background: The detection of pathogens at early stages of infection is a key point for disease control in aquaculture. Therefore, accurate diagnostic procedures are a must. Real-time PCR has been a mainstay in diagnostics over the years due to its speed, specificity, sensitivity, reproducibility and throughput; as such, real-time PCR is a target for improvement. Nevertheless, to validate a novel diagnostic tool, correct setup of the assay, including proper endogenous controls to evaluate the quantity and quality of the samples and to detect possible sample degradation, is compulsory. This work aims to design a unique RT-qPCR assay for pathogen detection in the three salmonid species reared in Chile. The assay uses elongation factor 1 alpha as the single endogenous control, thus avoiding the need for multiple endogenous controls, as well as multiple validations and non-comparable quality control parameters.Results: The in vivo and in vitro analyses of samples from Salmo salar, Oncorhynchus mykiss and Oncorhynchus kisutch showed that when primers were accurately selected to target conserved regions of the elongation factor 1 alpha (ELF1α) gene, a single novel RT-qPCR assay yielding similar and reproducible Ct values between the three species could be designed. The opposite occurred when an assay originally designed for Salmo salar was tested in samples from the two species of the genus Oncorhynchus.Conclusions: Here, we report the design and evaluation of an accurate trans-species RT-qPCR assay that uses the elongation factor 1 alpha (ELF1α) gene as an endogenous control and is applicable for diagnostic purposes in samples obtained from the three salmonid species reared in Chile.
KW - ELF1α
KW - Elongation Factor 1 alpha
KW - Endogenous control
KW - Fish disease
KW - Fish virus
KW - RT-qPCR
KW - Real-time PCR
UR - http://www.scopus.com/inward/record.url?scp=84883821784&partnerID=8YFLogxK
U2 - 10.1186/1746-6148-9-183
DO - 10.1186/1746-6148-9-183
M3 - Article
C2 - 24040749
AN - SCOPUS:84883821784
SN - 1746-6148
VL - 9
JO - BMC Veterinary Research
JF - BMC Veterinary Research
M1 - 183
ER -